Отрывок: It was found that the dominant pathway of acetaldehyde degradation involves C–C bond cleavage leading to the formation of carbon monoxide and methane. The second important channel is dehydrogenation resulting in the formation of ketene, a potentially highly reactive species. The significant effect of the matrix media both on the decomposition efficiency and distribution of the reaction channel...
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dc.date.accessioned2022-10-06 14:28:52-
dc.date.available2022-10-06 14:28:52-
dc.date.issued2022ru
dc.identifierRU\НТБ СГАУ\490185ru
dc.identifier.citationRadiation-induced transformations of acetaldehyde molecules at cryogenic temperatures: a matrix isolation study // International Conference on Physics and Chemistry of Combustion and in Extreme Environments (Samara, Russia, 12-16 July 2022) / V. N. Azyazov, A. M. Mayorova. - Samara : Publishing OOO “Insoma-Press”, 2022. - P. 65.ru
dc.identifier.urihttp://repo.ssau.ru/handle/International-Conference/Radiationinduced-transformations-of-acetaldehyde-molecules-at-cryogenic-temperatures-a-matrix-isolation-study-98847-
dc.language.isoengru
dc.sourceInternational Conference on Physics and Chemistry of Combustion and in Extreme Environments (Samara, Russia, 12-16 July 2022)ru
dc.titleRadiation-induced transformations of acetaldehyde molecules at cryogenic temperatures: a matrix isolation studyru
dc.typeTextru
dc.textpartIt was found that the dominant pathway of acetaldehyde degradation involves C–C bond cleavage leading to the formation of carbon monoxide and methane. The second important channel is dehydrogenation resulting in the formation of ketene, a potentially highly reactive species. The significant effect of the matrix media both on the decomposition efficiency and distribution of the reaction channel...-
Располагается в коллекциях: International Conference on Combustion Physics and Chemistry

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